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Modelling the transport of environmental DNA through a porous substrate using continuous flow-through column experiments

机译:使用连续流通柱实验模拟环境DNA通过多孔基质的运输

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摘要

Detecting environmental DNA (eDNA) in water samples is a powerful tool in determining the presence of rare aquatic species. However, many open questions remain as to how biological and physical conditions in flowing waters influence eDNA. Motivated by what one might find in a stream/ river benthos we conducted experiments in continuous flow columns packed with porous substrates to explore eDNA transport and ask whether substrate type and the presence of colonized biofilms plays an important role for eDNA retention. To interpret our data, and for modelling purposes, we began with the assumption that eDNA could be treated as a classical tracer. Comparing our experimental data with traditional transport models, we found that eDNA behaves anomalously, displaying characteristics of a heterogeneous, polydisperse substance with particle-like behaviour that can be filtered by the substrate. Columns were quickly flushed of suspended eDNA particles while a significant amount of particles never made it through and were retained in the column, as calculated from a mass balance. Suspended eDNA was exported through the column, regardless of biofilm colonization. Our results indicate that the variable particle size of eDNA results in stochastic retention, release and transport, which may influence the interpretation eDNA detection in biological systems.
机译:检测水样中的环境DNA(eDNA)是确定稀有水生物种存在的有力工具。但是,关于流水中的生物和物理条件如何影响eDNA,仍然存在许多悬而未决的问题。受可能在河流/河底栖生物中发现的影响,我们在装有多孔底物的连续流动色谱柱中进行了实验,以探索eDNA的运输,并询问底物类型和存在的生物膜是否对eDNA的保留起着重要作用。为了解释我们的数据并出于建模目的,我们首先假设eDNA可被视为经典示踪剂。将我们的实验数据与传统的运输模型进行比较,我们发现eDNA表现异常,显示出具有颗粒状行为的异质多分散性物质的特征,可以被底物过滤。根据质量平衡计算,色谱柱中的悬浮eDNA颗粒被快速冲洗,而大量颗粒从未穿过,并保留在色谱柱中。不管生物膜是否定殖,悬浮的eDNA均通过色谱柱输出。我们的结果表明,可变大小的eDNA导致随机保留,释放和运输,这可能会影响生物系统中eDNA检测的解释。

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